姓名:费林峰
国籍:中国
性别:男
学位:博士
电子邮件:flf@ncu.edu.cn
所在单位:物理与材料学院
职称:教授
学科:其他
费林峰,理学博士。于中国科学技术大学化学系取得本科学位,后于香港理工大学应用物理学系相继取得硕士、博士学位。博士毕业后,在香港理工大学继续从事博士后研究。2018年加入南昌大学物理与材料学院。
聚焦于固相及固相表面的多相物理化学过程,利用原子分辨的原位电子显微方法和多尺度计算模拟,揭示关键材料在人工环境下的微观结构变化机理和动力学,并进而对材料结构进行调控以达到提升性能的目的。具体研究方向包括:(1)结晶、生长、相变等过程的原位显微研究;(2)使役状况下材料行为的原子尺度解析;(3)跨尺度功能材料的表界面结构和性能调控。以第一/通讯作者在包括Nature Materials、Nature Communications、Advanced Materials、Acta Materialia等材料科学类主流杂志发表文章60余篇。获正面引用超过8000次,多篇论文入围ESI数据库“高被引论文”;多篇论文被科学网、ChemistryViews、MaterialsViews、英国皇家化学会(RSC)等学术媒体作为亮点研究报道。
联系方式
电子邮件:flf@ncu.edu.cn
ORCID iD:https://orcid.org/0000-0001-7329-0019
综述论文
1. C. X. Xing, M. Yao,* and L. F. Fei.* “Upcycling degraded layered oxide cathodes from spent lithium-ion batteries toward emerging materials: A review”, Energy Storage Materials (2024, 71, 103636). https://doi.org/10.1016/j.ensm.2024.103636
2. G. R. Wang, M. Xu,* L. F. Fei,* and C. Z. Wu.* “Toward high-performance Li-rich Mn-based layered cathodes: A review on surface modifications”, Small (2024, 20, 2405659). https://doi.org/10.1002/smll.202405659
3. G. Wang, G. X. Wang, L. F. Fei,* L. N. Zhao, and H. T. Zhang.* “Structural engineering of anode materials for low-temperature lithium-ion batteries: Mechanisms, strategies, and prospects”, Nano-Micro Letters (2024, 16, 150). https://doi.org/10.1007/s40820-024-01363-y
4. Z. Y. Zhang, Y. B. Zhou, X. L. Zhu, L. F. Fei,* H. T. Huang,* and Y. Wang. “Applications of ESEM on materials science: Recent updates and a look forward”, Small Methods (2020, 4, 1900588). https://doi.org/10.1002/smtd.201900588
近五年代表性论文
1. P. Yang, J. Qiang, J. Q. Chen, Z. Y. Zhang,* M. Xu,* and L. F. Fei.* “A versatile metal-organic-framework pillared interlayer design for high-capacity and long-life lithium-sulfur batteries”, Angewandte Chemie International Edition (2025, 64, e202414770). https://doi.org/10.1002/anie.202414770
2. Y. Y. Wen,# C. G. Deng,# Y. L. Cao, G. R. Wang, X. M. Shi,* Z. P. Wu,* X. N. Du, F. Zhang, H. D. Ren, L. F. Fei,* C. J. He, W. W. Liu, H. B. Huang, and Y. Zhang.* “Deterministic memristive polarization switching in relaxor ferroelectrics”, Advanced Materials (2025, 37, e04143). https://doi.org/10.1002/adma.202504143
3. Z. L. Yang,# P. Wang,# C. X. Xing,# J. Q. Chen, P. Yang, J. Zhou, L. Chen, S. Q. Tao, Z. Y. Zhang, C. Z. Wu,* and L. F. Fei.* “Transforming retired LiFePO4 material toward high-performance cathodes for sodium-ion batteries via intermediate phase-guided reconstruction”, ACS Nano (2025, 19, 40404). https://doi.org/10.1021/acsnano.5c11367
4. Y. L. Cao,# Y. Y. Wen,# G. R. Wang, S. C. Zhang, Z. C. Wang, Y. Li, S. L. Jiao, H. Ye,* F. Zhang, L. F. Fei,* Y. Zhang,* and Z. P. Wu.* “Transfer-heterogeneous epitaxy enables exceptional electrooptic response of BaTiO3 thin films integrated on silicon”, ACS Nano (2025, 19, 39272). https://doi.org/10.1021/acsnano.5c13059
5. L. Chen,# G. R. Wang,# C. X. Xing, Y. C. Zhang, J. W. Huang, P. Yang, D. Guo, M. D. Jiang, Z. W. Liu, B. B. Tang,* and L. F. Fei.* “The alchemy of two degraded cathodes: Synergistic surface-bulk upcycling for degraded NCM materials by leached LiFePO4”, Advanced Functional Materials (2025, e14508). https://doi.org/10.1002/adfm.202514508
6. Z. L. Yang, C. X. Xing, L. Chen, S. Q. Tao, Y. C. Zhang, G. R. Wang, P. Yang, J. Zhou, C. C. Zhang, J. Q. Chen, and L. F. Fei.* “Direct upcycling of degraded LiCoO2 material toward high-performance single-crystal NCM cathode”, Advanced Functional Materials (2025, 35, 2409737). https://doi.org/10.1002/adfm.202409737
7. L. Chen, C. X. Xing, Z. L. Yang, S. Q. Tao, Y. C. Zhang, G. R. Wang, P. Yang, J. P. Song, J. Q. Chen, and L. F. Fei.* “Effective upcycling of degraded NCM cathode materials assisted by surface engineering for high-performance lithium-ion batteries”, Advanced Functional Materials (2025, 35, 2411182). https://doi.org/10.1002/adfm.202411182
8. Y. Y. Deng, C. X. Xing, C. Li, Y. B. Zhou, Z. P. Peng, L. F. Fei,* C. Y. Zhi,* and T. Wang.* “Effective water confinement and dual electrolyte-electrode interfaces by zwitterionic oligomer for high-voltage aqueous lithium-ion batteries”, Advanced Functional Materials (2025, 35, 2416566). https://doi.org/10.1002/adfm.202416566
9. Y. Y. Deng, Z. Y. Xiao, W. R. Xu, Y. X. Wang, Z. P. Peng, L. F. Fei,* and T. Wang.* “Moderate yet reversible oligozwitterion adsorption unlocks stable zinc-ion batteries”, Advanced Functional Materials (2025, e09652). https://doi.org/10.1002/adfm.202509652
10. A. N. Long, G. W. Li, Y. C. Zhang, J. Q. Chen, Y. J. Wang, B. Xiao, Z. G. Rao,* and L. F. Fei.* “A flame-retardant, thermal-insulating wood-derived aerogel toward all-season thermal management”, Advanced Functional Materials (2025, e24221). https://doi.org/10.1002/adfm.202524221
11. Y. Yang, Y. H. He,* S. S. Hu, Z. W. Li, L. Tan, M. R. Zhang, J. Xiong, Y. M. Hu, X. L. Wang, L. F. Fei,* Z. Wang,* H. S. Gu, and J. B. Tang.* “Self-embedded Schottky junctions in liquid-metal-derived 2D oxides for fast and selective room-temperature H2 sensing”, Advanced Functional Materials (2025, 35, 2500605). https://doi.org/10.1002/adfm.202500605
12. Y. C. Zhang, J. W. Huang, L. Jiang, J. Qiang, Z. Y. Zhang, Z. F. Liu, Y. Liu, T. F. Tian,* Z. Wang,* and L. F. Fei.* “Boosting hydrogen evolution via flexoelectric catalysis in gradient F-doped hydroxyapatite nanowires”, Chemical Science (2025, 16, 9905). https://doi.org/10.1039/D5SC00710K
13. J. W. Huang,# M. Gan,# C. X. Xing, J. Q. Chen, Z. Y. Zhang, L. Tan,* Z. Wang,* H. S. Gu, and L. F. Fei.* “Coexistence of direct and indirect crystallographic pathways in deoxidation of molybdenum(VI) oxide nanowires”, The Journal of Physical Chemistry Letters (2025, 16, 2553). https://doi.org/10.1021/acs.jpclett.4c03725
14. J. Zhou, C. X. Xing, J. W. Huang, Y. C. Zhang, G. W. Li, L. Chen, S. Q. Tao, Z. L. Yang, G. R. Wang, and L. F. Fei.* “Direct upcycling of leached FePO4 from spent lithium-ion batteries toward gradient-doped LiMnxFe1-xPO4 cathode material”, Advanced Energy Materials (2024, 14, 2302761). https://doi.org/10.1002/aenm.202302761
15. J. W. Huang, Y. C. Zhang, J. Q. Chen, Z. Y. Zhang, C. F. Zhang,* C. S. Huang,* and L. F. Fei.* “Surface topology of MXene flakes induces the selection of the sintering mechanism for supported Pt nanoparticles”, Chemical Science (2024, 15, 14521). https://doi.org/10.1039/D4SC03284E
16. Y. C. Zhang, J. W. Huang, M. Y. Zhu, Z. Y. Zhang, K. Q. Nie, Z. G. Wang, X. X. Liao, L. L. Shu, T. F. Tian,* Z. Wang,* Y. Lu, and L. F. Fei.* “Significant hydrogen generation via photo-mechanical coupling in flexible methylammonium lead iodide nanowires”, Chemical Science (2024, 15, 1782). https://doi.org/10.1039/D3SC05434A
17. C. X. Xing,# M. Gan,# Y. R. Ying, B. Zhang, L. M. Liu, J. Ye,* Y. Liu,* Y. F. Zhang,* H. T. Huang, and L. F. Fei.* “Multiscale observations on mechanisms for direct regeneration of degraded NCM cathode materials”, Energy Storage Materials (2024, 65, 103182). https://doi.org/10.1016/j.ensm.2024.103182
18. M. Xu,#* P. Yang,# K. Fan,# Y. Gao, Z. Y. Zhang, Y. Li,* X. Y. Li, J. Q. Qi, K. Xi, H. T. Huang,* and L. F. Fei.* “Dynamically regulated redox shuttling and nucleation of lithium polysulfides through the built-in ferroelectric field”, Nano Today (2024, 57, 102393). https://doi.org/10.1016/j.nantod.2024.102393
19. C. X. Xing, H. R. Da, P. Yang, J. W. Huang, M. Gan, J. Zhou, Y. Li, H. T. Zhang, B. H. Ge,* and L. F. Fei.* “Aluminum impurity from current collectors reactivates degraded NCM cathode materials toward superior electrochemical performance”, ACS Nano (2023, 17, 3194). https://doi.org/10.1021/acsnano.3c00270
20. Z. Y. Zhang,# Y. R. Ying,# Z. Y. Wu, J. W. Huang, M. Gan, H. T. Zhang, H. T. Huang, Y. B. Zhou,* and L. F. Fei.* “Direct observation on single-crystal-to-single-crystal transformation via lattice-matched nucleation and growth”, Acta Materialia (2023, 258, 119206). https://doi.org/10.1016/j.actamat.2023.119206
21. J. W. Huang, J. L. Yin, J. Q. Chen, M. Gan, Z. Y. Zhang, T. F. Tian, and L. F. Fei.* “Dynamic observations on formation of coffee-ring structures from the degradation of cesium lead halide perovskite nanocrystals”, The Journal of Physical Chemistry Letters (2023, 14, 8563). https://doi.org/10.1021/acs.jpclett.3c02166
22. Z. Y. Zhang, Y. J. Tang, Y. R. Ying, J. Q. Guo, M. Gan, Y. T. Jiang, C. X. Xing, S. S. Pan, M. Xu, Y. B. Zhou, H. T. Zhang,* C. W. Leung, H. T. Huang, C. L. Mak,* and L. F. Fei.* “Multistep nucleation visualized during solid-state crystallization”, Materials Horizons (2022, 9, 1670). https://doi.org/10.1039/D2MH00174H
23. J. W. Huang, Z. Y. Zhang, Y. R. Ying, M. Gan, H. T. Huang, and L. F. Fei.* “Atomic-scale mechanisms on stepwise growth of MoxW1-xS2 into hexagonal flakes”, Chemical Communications (2022, 58, 9746). https://doi.org/10.1039/D2CC02465A
24. A. W. Xie, R. Z. Zuo,* Z. L. Qiao, Z. Q. Fu,* T. F. Tu, and L. F. Fei.* “NaNbO3-(Bi0.5Li0.5)TiO3 lead-free relaxor ferroelectric capacitors with superior energy-storage performances via multiple synergistic design”, Advanced Energy Materials (2021, 11, 2101378). https://doi.org/10.1002/aenm.202101378
25. Z. Y. Zhang, J. Qiang, S. S. Wang, M. Xu, M. Gan, Z. G. Rao, T. F. Tian, S. M. Ke, Y. B. Zhou, Y. M. Hu,* C. W. Leung, C. L. Mak,* and L. F. Fei.* “Visualization of bubble nucleation and growth confined in 2D flakes”, Small (2021, 17, 2103301). https://doi.org/10.1002/smll.202103301
26. J. Z. Jiang,# M. Xiong,# K. Fan, C. X. Bao, D. Y. Xin, Z. W. Pan, L. F. Fei, H. T. Huang, L. Zhou, K. Yao,* X. J. Zheng, L. Shen,* and F. Gao.* “Synergistic strain engineering of perovskite single crystals for highly stable and sensitive X-ray detectors with low-bias imaging and monitoring”, Nature Photonics (2022, 16, 575). https://doi.org/10.1038/s41566-022-01024-9
27. C. Chen,# Y. L. Yin,# R. C. Zhang,# Q. H. Yuan, Y. Xu, Y. S. Zhang, J. Chen, Y. Zhang, C. Li, J. Y. Wang, J. Li, L. F. Fei, Q. Yu, Z. Zhou, H. S. Zhang, R. Q. Cheng, Z. Dong, X. H. Xu, A. L. Pan,* K. Zhang,* and J. He.* “Growth of single-crystal black phosphorus and its alloy films through sustained feedstock release”, Nature Materials (2023, 22, 717). https://doi.org/10.1038/s41563-023-01516-1
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